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首页> 外文期刊>Scientific reports. >Preferential targeting cancer-related i-motif DNAs by the plant flavonol fisetin for theranostics applications
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Preferential targeting cancer-related i-motif DNAs by the plant flavonol fisetin for theranostics applications

机译:由植物黄酮类化合物用于治疗方法的癌症相关的I-MOTIF DNA优先靶向癌症相关的I-MOTIF DNA

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摘要

The relationship of i-motif DNAs with cancer has prompted the development of specific ligands to detect and regulate their formation. Some plant flavonols show unique fluorescence and anti-cancer properties, which suggest the utility of the theranostics approach to cancer therapy related to i-motif DNA. We investigated the effect of the plant flavonol, fisetin (Fis), on the physicochemical property of i-motif DNAs. Binding of Fis to the i-motif from the promoter region of the human vascular endothelial growth factor (VEGF) gene dramatically induced the excited state intramolecular proton transfer (ESIPT) reaction that significantly enhanced the intensity of the tautomer emission band of Fis. This unique response was due to the coincidence of the structural change from i-motif to the hairpin-like structure which is stabilized via putative Watson-Crick base pairs between some guanines within the loop region of the i-motif and cytosines in the structure. As a result, the VEGF i-motif did not act as a replication block in the presence of Fis, which indicates the applicability of Fis for the regulation of gene expression of VEGF. The fluorescence and biological properties of Fis may be utilised for theranostics applications for cancers related to a specific cancer-related gene, such as VEGF.
机译:I-MOTIF DNA与癌症的关系促使特定配体的发展检测和调节其形成。一些植物黄酮醇表现出独特的荧光和抗癌性质,这表明Theranostics方法对I-MOTIF DNA相关的癌症治疗的效用。我们调查了植物黄酮醇,Fisetin(FIS)对I-MOTIF DNA的物理化学性质的影响。 FIS与人血管内皮生长因子(VEGF)基因的启动子区域的与I-MOTIF的结合显着诱导了激发的状态分子元质子转移(ESIPT)反应,显着提高了FIS的互变异构体发射带的强度。这种独特的响应是由于I-MOTIF的结构变化与发夹状结构的结合,其通过在I-MOTIF的LOPE区域的一些鸟嘌呤和结构中的胞嘧啶内的一些鸟嘌呤之间通过推定的WATSON-CRICK碱基对稳定。结果,VEGF I-MOTIF在存在FIS的情况下没有用作复制块,这表明FIS对VEGF的基因表达的调节的适用性。 FIS的荧光和生物学特性可用于治疗癌症的癌症,用于与特异性癌症相关基因,如VEGF。

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